Opposite membrane potential changes induced by glucose deprivation in striatal spiny neurons and in large aspiny interneurons

被引:0
作者
Calabresi, P [1 ]
Ascone, CM [1 ]
Centonze, D [1 ]
Pisani, A [1 ]
Sancesario, G [1 ]
DAngelo, V [1 ]
Bernardi, G [1 ]
机构
[1] OSPED S LUCIA,IRCCS,ROME,ITALY
关键词
aglycemia; ischemia; excitatory amino acids; neuronal death; striatum; interneurons;
D O I
暂无
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We have studied the electrophysiological effects of glucose deprivation on morphologically identified striatal neurons recorded from a corticostriatal slice preparation. The large ma jority of the recorded cells were spiny neurons and responded to aglycemia with a slow membrane depolarization coupled with a reduction of the input resistance. In voltage-clamp experiments aglycemia caused an inward current. This current was associated with a conductance increase and reversed at -40 mV. The aglycemia-induced membrane depolarization was not affected by tetrodotoxin (TTX) or 6-cyano-7-nitroquinoxaline-2,3-dione plus aminophosphonovalerate, antagonists acting respectively on AMPA and NMDA glutamate receptors. Also, the intracellular injection of bis(2-aminophenoxy)ethane-N,N,N',N'-tetra-acetic acid, a calcium (Ca2+) chelator, and low Ca2+/high Mg2+-containing solutions failed to reduce-this phenomenon. Conversely, it was reduced by lowering external sodium (Na+) concentration. A minority of the recorded cells had the morphological characteristics of large aspiny interneurons and the electrophysiological properties of ''long-lasting afterhyperpolarization (LA) cells.'' These cells responded to aglycemia with a membrane hyperpolarization/outward current that was coupled with an increased conductance. This current was not altered by mt, blockers of ATP-dependent potassium (K+) channels, and adenosine Al receptor antagonists, whereas it was reduced by solutions containing low Ca2+/high Mg2+. This current reversed at -105 mV and was blocked by barium, suggesting the involvement of a K+ conductance. We suggest that the opposite membrane responses of striatal neuronal subtypes to glucose deprivation might account for their differential neuronal vulnerability to aglycemia and ischemia.
引用
收藏
页码:1940 / 1949
页数:10
相关论文
共 54 条
[1]   THE DISTRIBUTION OF HYPOGLYCEMIC BRAIN-DAMAGE [J].
AUER, RN ;
WIELOCH, T ;
OLSSON, Y ;
SIESJO, BK .
ACTA NEUROPATHOLOGICA, 1984, 64 (03) :177-191
[2]   BIOLOGICAL DIFFERENCES BETWEEN ISCHEMIA, HYPOGLYCEMIA, AND EPILEPSY [J].
AUER, RN ;
SIESJO, BK .
ANNALS OF NEUROLOGY, 1988, 24 (06) :699-707
[3]   DOES IMPAIRMENT OF ENERGY-METABOLISM RESULT IN EXCITOTOXIC NEURONAL DEATH IN NEURODEGENERATIVE ILLNESSES [J].
BEAL, MF .
ANNALS OF NEUROLOGY, 1992, 31 (02) :119-130
[4]   REPLICATION OF THE NEUROCHEMICAL CHARACTERISTICS OF HUNTINGTONS-DISEASE BY QUINOLINIC ACID [J].
BEAL, MF ;
KOWALL, NW ;
ELLISON, DW ;
MAZUREK, MF ;
SWARTZ, KJ ;
MARTIN, JB .
NATURE, 1986, 321 (6066) :168-171
[5]   AGING, ENERGY, AND OXIDATIVE STRESS IN NEURODEGENERATIVE DISEASES [J].
BEAL, MF .
ANNALS OF NEUROLOGY, 1995, 38 (03) :357-366
[6]  
BRIERLEY JB, 1976, GREENFIELDS NEUROPAT, P43
[7]   THE EFFECT OF NEONATAL HYPOXIA ISCHEMIA ON STRIATAL CHOLINERGIC NEUROPIL - A QUANTITATIVE MORPHOLOGICAL ANALYSIS [J].
BURKE, RE ;
KENYON, N .
EXPERIMENTAL NEUROLOGY, 1991, 113 (01) :63-73
[8]   SYNAPTIC AND INTRINSIC CONTROL OF MEMBRANE EXCITABILITY OF NEOSTRIATAL NEURONS .1. AN INVIVO ANALYSIS [J].
CALABRESI, P ;
MERCURI, NB ;
STEFANI, A ;
BERNARDI, G .
JOURNAL OF NEUROPHYSIOLOGY, 1990, 63 (04) :651-662
[9]   KAINIC ACID ON NEOSTRIATAL NEURONS INTRACELLULARLY RECORDED INVITRO - ELECTROPHYSIOLOGICAL EVIDENCE FOR DIFFERENTIAL NEURONAL SENSITIVITY [J].
CALABRESI, P ;
DEMURTAS, M ;
MERCURI, NB ;
BERNARDI, G .
JOURNAL OF NEUROSCIENCE, 1990, 10 (12) :3960-3969
[10]   VULNERABILITY OF MEDIUM SPINY STRIATAL NEURONS TO GLUTAMATE - ROLE OF NA+/K+ ATPASE [J].
CALABRESI, P ;
DEMURTAS, M ;
PISANI, A ;
STEFANI, A ;
SANCESSARIO, G ;
MERCURI, NB ;
BERNARDI, G .
EUROPEAN JOURNAL OF NEUROSCIENCE, 1995, 7 (08) :1674-1683